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Critical Reviews in Eukaryotic Gene Expression
|
January 5, 2006
Role of Runx proteins in chondrogenesis
Carolina A Yoshida, Toshihisa Komori
Developmental Biology
|
April 25, 2009
Akt regulates skeletal development through GSK3, mTOR, and FoxOs
Satoshi Rokutanda, Takashi Fujita, Naoko Kanatani, et al.
Journal of Bone and Mineral Metabolism
|
October 5, 2010
Regulation of Tcf7 by Runx2 in chondrocyte maturation and proliferation
Masaki Mikasa, Satoshi Rokutanda, Hisato Komori, et al.
Nature Genetics
|
November 16, 2002
Core-binding factor beta interacts with Runx2 and is required for skeletal development
Carolina A Yoshida, Tatsuya Furuichi, Takashi Fujita, et al.
Developmental Biology
|
June 27, 2006
Cbf beta regulates Runx2 function isoform-dependently in postnatal bone development
Naoko Kanatani, Takashi Fujita, Ryo Fukuyama, et al.
Genes & Development
|
April 27, 2004
Runx2 and Runx3 are essential for chondrocyte maturation, and Runx2 regulates limb growth through induction of Indian hedgehog
Carolina A Yoshida, Hiromitsu Yamamoto, Takashi Fujita, et al.
Histochemistry and Cell Biology
|
October 12, 2012
Galnt3 deficiency disrupts acrosome formation and leads to oligoasthenoteratozoospermia
Toshihiro Miyazaki, Masako Mori, Carolina A Yoshida, et al.
Molecular and Cellular Biology
|
November 28, 2007
Runx2 represses myocardin-mediated differentiation and facilitates osteogenic conversion of vascular smooth muscle cells
Toru Tanaka, Hiroko Sato, Hiroshi Doi, et al.
Bone
|
August 2, 2011
Pyruvate dehydrogenase kinase 4 induces bone loss at unloading by promoting osteoclastogenesis
Yuying Wang, Wenguang Liu, Ritsuko Masuyama, et al.
The Journal of Biological Chemistry
|
April 17, 2003
Induction of osteoclast differentiation by Runx2 through receptor activator of nuclear factor-kappa B ligand (RANKL) and osteoprotegerin regulation and partial rescue of osteoclastogenesis in Runx2-/- mice by RANKL transgene
Hirayuki Enomoto, Satoko Shiojiri, Kazuto Hoshi, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
Critical Reviews in Eukaryotic Gene Expression
|
January 5, 2006
Role of Runx proteins in chondrogenesis
Carolina A Yoshida, Toshihisa Komori
Developmental Biology
|
April 25, 2009
Akt regulates skeletal development through GSK3, mTOR, and FoxOs
Satoshi Rokutanda, Takashi Fujita, Naoko Kanatani, et al.
Journal of Bone and Mineral Metabolism
|
October 5, 2010
Regulation of Tcf7 by Runx2 in chondrocyte maturation and proliferation
Masaki Mikasa, Satoshi Rokutanda, Hisato Komori, et al.
Nature Genetics
|
November 16, 2002
Core-binding factor beta interacts with Runx2 and is required for skeletal development
Carolina A Yoshida, Tatsuya Furuichi, Takashi Fujita, et al.
Developmental Biology
|
June 27, 2006
Cbf beta regulates Runx2 function isoform-dependently in postnatal bone development
Naoko Kanatani, Takashi Fujita, Ryo Fukuyama, et al.
Genes & Development
|
April 27, 2004
Runx2 and Runx3 are essential for chondrocyte maturation, and Runx2 regulates limb growth through induction of Indian hedgehog
Carolina A Yoshida, Hiromitsu Yamamoto, Takashi Fujita, et al.
Histochemistry and Cell Biology
|
October 12, 2012
Galnt3 deficiency disrupts acrosome formation and leads to oligoasthenoteratozoospermia
Toshihiro Miyazaki, Masako Mori, Carolina A Yoshida, et al.
Molecular and Cellular Biology
|
November 28, 2007
Runx2 represses myocardin-mediated differentiation and facilitates osteogenic conversion of vascular smooth muscle cells
Toru Tanaka, Hiroko Sato, Hiroshi Doi, et al.
Bone
|
August 2, 2011
Pyruvate dehydrogenase kinase 4 induces bone loss at unloading by promoting osteoclastogenesis
Yuying Wang, Wenguang Liu, Ritsuko Masuyama, et al.
The Journal of Biological Chemistry
|
April 17, 2003
Induction of osteoclast differentiation by Runx2 through receptor activator of nuclear factor-kappa B ligand (RANKL) and osteoprotegerin regulation and partial rescue of osteoclastogenesis in Runx2-/- mice by RANKL transgene
Hirayuki Enomoto, Satoko Shiojiri, Kazuto Hoshi, et al.
Page
of 2